Firefly Movement Phenomenon of Wire Particle Swarm and Risk Assessment in DC GIS/GIL

被引:2
作者
Hu, Zhiying [1 ]
Wei, Lai [2 ]
Geng, Qiuyu [2 ]
Wang, Jian [2 ]
Li, Qingmin [1 ]
Chang, Yanan [1 ]
机构
[1] State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources, North China Electric Power University, Changping District, Beijing
[2] Key Laboratory of high voltage and EMC, North China Electric Power University, Changping District, Beijing
来源
Zhongguo Dianji Gongcheng Xuebao/Proceedings of the Chinese Society of Electrical Engineering | 2024年 / 44卷 / 15期
基金
中国国家自然科学基金;
关键词
firefly mechanism; GIS/GIL; motion characteristics; risk assessment; wire particle swarm;
D O I
10.13334/j.0258-8013.pcsee.230725
中图分类号
学科分类号
摘要
The existence of metal particle swarm in DC GIS/GIL seriously threatens the insulation performance of the equipment, and the wire particles will undergo firefly. To clarify the firefly motion mechanism of the wire particle swarm, this paper proposes a firefly motion observation platform, and obtains the motion characteristics of the wire particle swarm. Furthermore, the charged motion model of particle swarm is established, and the dynamic simulation of wire particle swarm is realized. The results show that the onset voltage of the particle swarm is negatively correlated with the number of particles, and increases with the increase of particle diameter while decreases with the increase of particle length. The lifting voltage of the particle swarm decreases in the stacked state, but the onset voltage of the particle swarm is not affected by the initial states of the particles. Compared with the single particle, the changes of Coulomb force, space charge and field strength between particles make the wire particle swarm lead to a series of irregular suspension and random spanning motions exhibited by the wire particle swarm. The particle swarm significantly reduces the electrical strength of the equipment, and further evaluates the risk degree of the wire particle swarm motion behavior based on the air gap breakdown effect of the particles. The specific results show that for the wire particle swarm firefly, the risk of the ground electrode single particle firefly is the lowest, the risk of the high voltage electrode single particle firefly and the stationary particles firefly is higher, and the risk of particles flying around is the highest. This study provides a reference for the main insulation design of the equipment in terms of suppressing the movement of the particle swarm. ©2024 Chin.Soc.for Elec.Eng.
引用
收藏
页码:6219 / 6228
页数:9
相关论文
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